RF-Excited Slab Waveguide CO2 Lasers Utilising Graded Phase Mirror Resonators

B. Wasilewski, H. Baker, D. Hall
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Abstract

RF discharge excited slab-waveguide carbon dioxide lasers have been developed as relatively inexpensive sources of good beam quality, high power, far infrared radiation (10.6µm). They commonly incorporate a hybrid resonator design which involves waveguide propagation in the transverse direction and a confocal-unstable design in the lateral (wide) dimension. Such resonators offer excellent beam quality, adequate for most applications. However, they may exhibit variations in the beam shape when mirrors are tilted, and scaling the laser to high powers requires use of wide spherical mirrors, which causes increased sensitivity to unwanted spherical curvatures (bending and twisting) overlaid on the mirror shape during manufacturing and/or mounting, To remove this unwanted behaviour, alternative resonator geometries are under consideration.
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利用梯度相镜谐振器的射频激发平板波导CO2激光器
射频放电激发板波导二氧化碳激光器作为光束质量好、功率高、远红外辐射(10.6µm)的相对廉价的光源已经得到了发展。它们通常采用混合谐振器设计,其中包括横向波导传播和横向(宽)尺寸的共焦不稳定设计。这种谐振器提供优秀的光束质量,足以满足大多数应用。然而,当反射镜倾斜时,它们可能会表现出光束形状的变化,并且将激光缩放到高功率需要使用宽球面反射镜,这会导致在制造和/或安装期间对覆盖在反射镜形状上的不需要的球面曲率(弯曲和扭曲)的灵敏度增加。为了消除这种不需要的行为,正在考虑替代谐振器几何形状。
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